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July 1, 1999The Journal of Biochemistry29 citations

Roles of Troponin Isoforms in pH Dependence of Contraction in Rabbit Fast and Slow Skeletal and Cardiac Muscles

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SMSachio MorimotoFukuoka International UniversityKHKatsumasa HaradaUniversity of TsukubaIOIwao OhtsukiJikei University School of Medicine

Structured PICO

P
Population
Skinned fibers prepared from rabbit fast and slow skeletal and cardiac muscles
I
Intervention
Exchange of endogenous troponin I and troponin C with all possible combinations of isoforms from rabbit fast and slow skeletal and cardiac muscles
C
Comparator
Different combinations of troponin isoforms
O
Outcome
Ca2+ sensitivity of force generation under acidic pH conditionssurrogate

This study identifies specific troponin isoforms responsible for the differential pH sensitivity of contraction in cardiac versus skeletal muscles.

Abstract

Skinned fibers prepared from rabbit fast and slow skeletal and cardiac muscles showed acidotic depression of the Ca2+ sensitivity of force generation, in which the magnitude depends on muscle type in the order of cardiac>fast skeletal>slow skeletal. Using a method that displaces whole troponin-complex in myofibrils with excess troponin T, the roles of Tn subunits in the differential pH dependence of the Ca2+ sensitivity of striated muscle were investigated by exchanging endogenous troponin I and troponin C in rabbit skinned cardiac muscle fibres with all possible combinations of the corresponding isoforms expressed in rabbit fast and slow skeletal and cardiac muscles. In fibers exchanged with fast skeletal or cardiac troponin I, cardiac troponin C confers a higher sensitivity to acidic pH on the Ca2+ sensitive force generation than fast skeletal troponin C independently of the isoform of troponin I present. On the other hand, fibres exchanged with slow skeletal troponin I exhibit the highest resistance to acidic pH in combination with either isoform of troponin C. These results indicate that troponin C is a determinant of the differential pH sensitivity of fast skeletal and cardiac muscles, while troponin I is a determinant of the pH sensitivity of slow skeletal muscle.

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Cite This Study

Morimoto et al. (1999) studied this question.

synapsesocial.com/papers/6a24507e003b3cd7fea65e39https://doi.org/10.1093/oxfordjournals.jbchem.a022412
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Contributions of Troponin I and Troponin C to the Acidic pH-Induced Depression of Contractile Ca2+ Sensitivity in Cardiotrabeculae1995 · 22 citations
  2. 2Isoform Specific Interactions of Troponin I and Troponin C Determine pH Sensitivity of Myofibrillar Ca2+ Activation1994 · 49 citations
  3. 3Troponin I isoforms and differential effects of acidic pH on soleus and cardiac myofilaments1995 · 46 citations
  4. 4Effects of troponin C isoforms on pH sensitivity of contraction in mammalian fast and slow skeletal muscle fibres.1996 · 24 citations
  5. 5Role of Troponin C in Determining the Ca2+-Sensitivity and Cooperativity of the Tension Development in Rabbit Skeletal and Cardiac Muscles11994 · 15 citations